首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Swi/Snf dynamics on stress-responsive genes is governed by competitive bromodomain interactions
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Swi/Snf dynamics on stress-responsive genes is governed by competitive bromodomain interactions

机译:应激反应基因的Swi / Snf动力学受竞争性bromodomain相互作用支配

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The Swi/Snf chromatin remodeling complex functions to alter nucleosome positions by either sliding nucleosomes on DNA or the eviction of histones. The presence of histone acetylation and activator-dependent recruitment and retention of Swi/Snf is important for its efficient function. It is not understood, however, why such mechanisms are required to enhance Swi/Snf activity on nucleosomes. Snf2, the catalytic subunit of the Swi/Snf remodeling complex, has been shown to be a target of the Gcn5 acetyltransferase. Our study found that acetylation of Snf2 regulates both recruitment and release of Swi/Snf from stress-responsive genes. Also, the intramolecular interaction of the Snf2 bromodomain with the acetylated lysine residues on Snf2 negatively regulates binding and remodeling of acetylated nucleosomes by Swi/Snf. Interestingly, the presence of transcription activators mitigates the effects of the reduced affinity of acetylated Snf2 for acetylated nucleosomes. Supporting our in vitro results, we found that activator-bound genes regulating metabolic processes showed greater retention of the Swi/Snf complex even when Snf2 was acetylated. Our studies demonstrate that competing effects of (1) Swi/Snf retention by activators or high levels of histone acetylation and (2) Snf2 acetylation-mediated release regulate dynamics of Swi/Snf occupancy at target genes.
机译:Swi / Snf染色质重塑复合体的功能是通过在DNA上滑动核小体或逐出组蛋白来改变核小体位置。组蛋白乙酰化的存在和依赖于活化剂的募集和Swi / Snf的保留对于其有效功能很重要。但是,为什么需要这种机制来增强Swi / Snf对核小体的活性尚不清楚。 Snf2,Swi / Snf重塑复合体的催化亚基,已被证明是Gcn5乙酰转移酶的目标。我们的研究发现,Snf2的乙酰化调节应激反应基因中Swi / Snf的募集和释放。而且,Snf2溴结构域与Snf2上的乙酰化赖氨酸残基的分子内相互作用会负面调节Swi / Snf对乙酰化核小体的结合和重塑。有趣的是,转录激活因子的存在减轻了乙酰化Snf2对乙酰化核小体亲和力降低的影响。支持我们体外研究的结果发现,即使Snf2被乙酰化,调节代谢过程的激活剂结合基因也显示出Swi / Snf复合物的保留更大。我们的研究表明(1)激活剂保留Swi / Snf或高水平的组蛋白乙酰化和(2)Snf2乙酰化介导的释放的竞争效应调节了Swi / Snf在靶基因上的占有动态。

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